Chleboun G S, Howell J N, Conatser R R, Giesey J J
Ohio University School of Physical Therapy, Athens, USA.
Med Sci Sports Exerc. 1998 Apr;30(4):529-35. doi: 10.1097/00005768-199804000-00010.
The time courses of muscle compartmental swelling and passive stiffness change were measured to determine whether muscle compartmental swelling accounted for increased stiffness.
Eleven untrained female college students exercised eccentrically by lowering a weight with their elbow flexors. Measurements of muscle compartment volume, stiffness, relaxed elbow angle, circumference, and pain were recorded before exercise, immediately after exercise, and 1-5, 7, 9, and 11 d after exercise. Muscle compartment volume was calculated from cross-sectional ultrasound images taken along the upper arm. Stiffness was measured using a device that extended the elbow and recorded the torque required to hold the forearm at successive angles.
Elbow flexor volume increased gradually to peak on the fourth day (26.1 +/- 4.3%, P < 0.05) and then decreased to baseline values over days 7-11. Stiffness increased immediately after exercise (59.9 +/- 14.1%, P < 0.05) and remained at or above this level until decreasing to pre-exercise levels over days 7-11.
This suggests that muscle swelling does not account for the sudden increase in stiffness of the elbow flexor muscles within the first 48 h after exercise but may play a role in the subsequent time course of stiffness.
测量肌肉间隔肿胀和被动僵硬度变化的时间进程,以确定肌肉间隔肿胀是否是僵硬度增加的原因。
11名未经训练的女大学生通过用肘屈肌放下重物进行离心运动。在运动前、运动后即刻以及运动后1 - 5天、7天、9天和11天记录肌肉间隔体积、僵硬度、肘关节放松角度、周长和疼痛情况。肌肉间隔体积由沿上臂拍摄的超声横截面图像计算得出。使用一种使肘关节伸展并记录将前臂保持在连续角度所需扭矩的装置来测量僵硬度。
肘屈肌体积在第4天逐渐增加至峰值(26.1±4.3%,P<0.05),然后在第7 - 11天降至基线值。僵硬度在运动后即刻增加(59.9±14.1%,P<0.05),并在第7 - 11天降至运动前水平之前一直维持在该水平或以上。
这表明肌肉肿胀不是运动后最初48小时内肘屈肌僵硬度突然增加的原因,但可能在随后的僵硬度变化过程中起作用。